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萜烯混合物与臭氧反应生成羟基自由基。

Hydroxyl radical yields from reactions of terpene mixtures with ozone.

机构信息

Exposure Assessment Branch, Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, WV, USA.

出版信息

Indoor Air. 2011 Oct;21(5):400-9. doi: 10.1111/j.1600-0668.2011.00718.x. Epub 2011 May 9.

Abstract

UNLABELLED

Chamber studies were conducted to quantify hydroxyl radical (OH·) yields and to determine whether water vapor affected OH· formation in the reactions of ozone (O(3)) with a single terpene, two-component terpene mixtures, and a commercial pine oil cleaning product (POC). Solid-phase microextraction fibers (SPME) were used for sampling the terpenes and the 2-butanone formation from the hydroxyl reaction with 2-butanol as a measure of OH· yields. Analyses were performed using gas chromatography with flame ionization detection. The individual terpenes' OH· yields from α-terpineol, limonene, and α-pinene were 64 ± 8%, 64 ± 6%, and 76 ± 6%, respectively. OH· yields were also measured from two-component mixtures of these terpenes. In each mixture that contained α-terpineol, the overall OH· yield was lower than the modeled OH· yields of the individual components that comprised the reaction mixture. Reactions of a commercial POC with O(3) were also studied to determine how the individual terpenes react in a complex mixture system, and an OH· formation yield of 51 ± 6% was measured. Relative humidity did not have a significant effect on the OH· formation in the mixtures studied here.

PRACTICAL IMPLICATIONS

The data presented here demonstrate that mixtures may react differently than the sum of their individual components. By investigating the chemistry of mixtures of chemicals in contrast to the chemistry of individual compounds, a better assessment can be made of the overall impact cleaning products have on indoor environments.

摘要

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在腔室研究中量化了羟基自由基(OH·)的产率,并确定水蒸气是否会影响臭氧(O(3))与单萜烯、两种萜烯混合物以及商用松油清洁剂(POC)反应中 OH·的形成。固相微萃取纤维(SPME)用于从与 2-丁醇的羟基反应中采样萜烯和 2-丁酮的形成,作为 OH·产率的度量。使用气相色谱法和火焰离子化检测进行分析。α-松油醇、柠檬烯和α-蒎烯的单个萜烯的 OH·产率分别为 64±8%、64±6%和 76±6%。还测量了这些萜烯的两种混合物的 OH·产率。在每个包含α-松油醇的混合物中,整体 OH·产率低于构成反应混合物的各个成分的模型化 OH·产率。还研究了商用 POC 与 O(3)的反应,以确定在复杂的混合物系统中单个萜烯如何反应,并测量到 51±6%的 OH·形成产率。相对湿度对混合物中 OH·的形成没有显著影响。

实际意义

这里呈现的数据表明,混合物的反应可能与它们各自成分的总和不同。通过研究混合物的化学性质与单个化合物的化学性质的对比,可以更好地评估清洁产品对室内环境的整体影响。

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